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Combined Toxicity of TiO(2) Nanospherical Particles and TiO(2) Nanotubes to Two Microalgae with Different Morphology

The joint activity of multiple engineered nanoparticles (ENPs) has attracted much attention in recent years. Many previous studies have focused on the combined toxicity of different ENPs with nanostructures of the same dimension. However, the mixture toxicity of multiple ENPs with different dimensio...

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Autores principales: Wang, Zhuang, Jin, Shiguang, Zhang, Fan, Wang, Degao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7766607/
https://www.ncbi.nlm.nih.gov/pubmed/33419281
http://dx.doi.org/10.3390/nano10122559
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author Wang, Zhuang
Jin, Shiguang
Zhang, Fan
Wang, Degao
author_facet Wang, Zhuang
Jin, Shiguang
Zhang, Fan
Wang, Degao
author_sort Wang, Zhuang
collection PubMed
description The joint activity of multiple engineered nanoparticles (ENPs) has attracted much attention in recent years. Many previous studies have focused on the combined toxicity of different ENPs with nanostructures of the same dimension. However, the mixture toxicity of multiple ENPs with different dimensions is much less understood. Herein, we investigated the toxicity of the binary mixture of TiO(2) nanospherical particles (NPs) and TiO(2) nanotubes (NTs) to two freshwater algae with different morphology, namely, Scenedesmus obliquus and Chlorella pyrenoidosa. The physicochemical properties, dispersion stability, and the generation of reactive oxygen species (ROS) were determined in the single and binary systems. Classical approaches to assessing mixture toxicity were applied to evaluate and predict the toxicity of the binary mixtures. The results show that the combined toxicity of TiO(2) NPs and NTs to S. obliquus was between the single toxicity of TiO(2) NTs and NPs, while the combined toxicity to C. pyrenoidosa was higher than their single toxicity. Moreover, the toxicity of the binary mixtures to C. pyrenoidosa was higher than that to S. obliquus. A toxic unit assessment showed that the effects of TiO(2) NPs and NTs were additive to the algae. The combined toxicity to S. obliquus and C. pyrenoidosa can be effectively predicted by the concentration addition model and the independent action model, respectively. The mechanism of the toxicity caused by the binary mixtures of TiO(2) NPs and NTs may be associated with the dispersion stability of the nanoparticles in aquatic media and the ROS-induced oxidative stress effects. Our results may offer a new insight into evaluating and predicting the combined toxicological effects of ENPs with different dimensions and of probing the mechanisms involved in their joint toxicity.
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spelling pubmed-77666072020-12-28 Combined Toxicity of TiO(2) Nanospherical Particles and TiO(2) Nanotubes to Two Microalgae with Different Morphology Wang, Zhuang Jin, Shiguang Zhang, Fan Wang, Degao Nanomaterials (Basel) Article The joint activity of multiple engineered nanoparticles (ENPs) has attracted much attention in recent years. Many previous studies have focused on the combined toxicity of different ENPs with nanostructures of the same dimension. However, the mixture toxicity of multiple ENPs with different dimensions is much less understood. Herein, we investigated the toxicity of the binary mixture of TiO(2) nanospherical particles (NPs) and TiO(2) nanotubes (NTs) to two freshwater algae with different morphology, namely, Scenedesmus obliquus and Chlorella pyrenoidosa. The physicochemical properties, dispersion stability, and the generation of reactive oxygen species (ROS) were determined in the single and binary systems. Classical approaches to assessing mixture toxicity were applied to evaluate and predict the toxicity of the binary mixtures. The results show that the combined toxicity of TiO(2) NPs and NTs to S. obliquus was between the single toxicity of TiO(2) NTs and NPs, while the combined toxicity to C. pyrenoidosa was higher than their single toxicity. Moreover, the toxicity of the binary mixtures to C. pyrenoidosa was higher than that to S. obliquus. A toxic unit assessment showed that the effects of TiO(2) NPs and NTs were additive to the algae. The combined toxicity to S. obliquus and C. pyrenoidosa can be effectively predicted by the concentration addition model and the independent action model, respectively. The mechanism of the toxicity caused by the binary mixtures of TiO(2) NPs and NTs may be associated with the dispersion stability of the nanoparticles in aquatic media and the ROS-induced oxidative stress effects. Our results may offer a new insight into evaluating and predicting the combined toxicological effects of ENPs with different dimensions and of probing the mechanisms involved in their joint toxicity. MDPI 2020-12-20 /pmc/articles/PMC7766607/ /pubmed/33419281 http://dx.doi.org/10.3390/nano10122559 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Wang, Zhuang
Jin, Shiguang
Zhang, Fan
Wang, Degao
Combined Toxicity of TiO(2) Nanospherical Particles and TiO(2) Nanotubes to Two Microalgae with Different Morphology
title Combined Toxicity of TiO(2) Nanospherical Particles and TiO(2) Nanotubes to Two Microalgae with Different Morphology
title_full Combined Toxicity of TiO(2) Nanospherical Particles and TiO(2) Nanotubes to Two Microalgae with Different Morphology
title_fullStr Combined Toxicity of TiO(2) Nanospherical Particles and TiO(2) Nanotubes to Two Microalgae with Different Morphology
title_full_unstemmed Combined Toxicity of TiO(2) Nanospherical Particles and TiO(2) Nanotubes to Two Microalgae with Different Morphology
title_short Combined Toxicity of TiO(2) Nanospherical Particles and TiO(2) Nanotubes to Two Microalgae with Different Morphology
title_sort combined toxicity of tio(2) nanospherical particles and tio(2) nanotubes to two microalgae with different morphology
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7766607/
https://www.ncbi.nlm.nih.gov/pubmed/33419281
http://dx.doi.org/10.3390/nano10122559
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